Published June 2014 | Version public
Journal Article

Analytical techniques for retrieval of atmospheric composition with the quadrupole mass spectrometer of the Sample Analysis at Mars instrument suite on Mars Science Laboratory

Abstract

The Sample Analysis at Mars (SAM) instrument suite is the largest scientific payload on the Mars Science Laboratory (MSL) Curiosity rover, which landed in Mars׳ Gale Crater in August 2012. As a miniature geochemical laboratory, SAM is well-equipped to address multiple aspects of MSL׳s primary science goal, characterizing the potential past or present habitability of Gale Crater. Atmospheric measurements support this goal through compositional investigations relevant to martian climate evolution. SAM instruments include a quadrupole mass spectrometer, a tunable laser spectrometer, and a gas chromatograph that are used to analyze martian atmospheric gases as well as volatiles released by pyrolysis of solid surface materials (Mahaffy et al., 2012). This report presents analytical methods for retrieving the chemical and isotopic composition of Mars׳ atmosphere from measurements obtained with SAM׳s quadrupole mass spectrometer. It provides empirical calibration constants for computing volume mixing ratios of the most abundant atmospheric species and analytical functions to correct for instrument artifacts and to characterize measurement uncertainties. Finally, we discuss differences in volume mixing ratios of the martian atmosphere as determined by SAM (Mahaffy et al., 2013) and Viking (Owen et al., 1977, Oyama and Berdahl, 1977) from an analytical perspective. Although the focus of this paper is atmospheric observations, much of the material concerning corrections for instrumental effects also applies to reduction of data acquired with SAM from analysis of solid samples.

Additional Information

NASA provided support for the development of SAM. Data from all SAM experiments are archived in the Planetary Data System (pds.nasa.gov). The authors thank the SAM development, operations, and test bed teams for their essential contributions to mission success, S. Mroczkowski and J.K. Bohlke of the U.S. Geological Survey for measuring the isotopic composition of the SAM O₂ calibration gas, and R.H. Becker and R.O. Pepin for insightful discussions during preparation of this manuscript.

Additional details

Identifiers

Eprint ID
119706
Resolver ID
CaltechAUTHORS:20230307-649604000.3

Funding

NASA
USGS

Dates

Created
2023-03-14
Created from EPrint's datestamp field
Updated
2023-03-14
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